By Paul P. Maglio, Teenie Matlock, Christopher S. Campbell, Shumin Zhai, Barton A. Smith (auth.), Tieniu Tan, Yuanchun Shi, Wen Gao (eds.)
Multimodal Interfaces represents an rising interdisciplinary learn course and has turn into one of many frontiers in machine technological know-how. Multimodal interfaces goal at effective, handy and common interplay and communique among desktops (in their broadest feel) and human clients. they're going to finally allow clients to engage with pcs utilizing their daily talents. those complaints comprise the papers approved for presentation on the 3rd foreign convention on Multimodal Interfaces (ICMI 2000) held in Beijing, China on 1416 O ctober 2000. The papers have been chosen from 172 contributions submitted around the world. each one paper was once allotted for evaluate to 3 contributors of this system Committee, which consisted of greater than forty best researchers within the box. ultimate judgements of 38 oral papers and forty eight poster papers have been made in response to the reviewers’ reviews and the will for a stability of issues. the choice to have a unmarried tune convention ended in a aggressive choice method and it's very most probably that a few reliable submissions usually are not integrated during this quantity. The papers accumulated right here conceal a variety of themes comparable to affective and perceptual computing, interfaces for wearable and cellular computing, gestures and signal languages, face and facial features research, multilingual interfaces, digital and augmented fact, speech and handwriting, multimodal integration and alertness platforms. They symbolize a few of the newest development in multimodal interfaces research.
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Additional resources for Advances in Multimodal Interfaces — ICMI 2000: Third International Conference Beijing, China, October 14–16, 2000 Proceedings
Moreover, we have seen an improvement in the quality of the speech recognition technology in recent years, and we foresee that this technology will be widely used in the coming future as the technology further improves. It is also possible to operate the computer using voice nowadays. However, there is a need to memorize those commands and T. Tan, Y. Shi, and W. ): ICMI 2000, LNCS 1948, pp. 16-23, 2000. © Springer-Verlag Berlin Heidelberg 2000 Human-Robot Interface Based on Speech Understanding Assisted by Vision 17 say them with correct pronunciation.
3. Central Processing Module This is an important module as it monitors all the operations going on within the system. It constantly checks the activities of the other modules, receives their information, and plans whatever actions or processing necessary. In the language processing part, various information and knowledge are being used together with the recognized result from the speech module to find out the meanings of verbal natural human voice input. And it carries out effective communication with the user in order to obtain additional information when it is not able to analyze the utterances correctly.
Furthermore, it is now possible to construct user interfaces that provide multi-sensory interactions. For example, interfaces can be designed which utilise 3D visual spaces and also provide auditory and haptic feedback. These multi-sensory interfaces may assist in the interpretation of abstract information spaces by providing models that map different attributes of data to different senses. While this approach has the potential to assist in exploring these large information spaces what is unclear is how to choose the best models to define mappings between the abstract information and the human sensory channels.